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The exploration of the subnuclear international is finished via more and more complicated experiments masking a variety of power and played in a wide number of environments from particle accelerators, underground detectors to satellites and house laboratory. The fulfillment of those study courses demands novel suggestions, new fabrics and instrumentation for use in detectors, frequently of huge scale. as a result, basic physics is on the leading edge of technological enhance and in addition ends up in many purposes. between those, clinical purposes have a specific significance because of overall healthiness and social advantages they bring about to the general public.
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Extra resources for Astroparticle, Particle and Space Physics, Detectors and Medical Physics Applications: Proceedings of the 11th Conference ( Astroparticle, Particle, Space ... Detectors and Medical Physics Applications )
No difference was found between the CAEN TOC measurements and the new electronics prototype, thus validating the performance of the final RICH readout system. e a~ J::. : ... ... 060 C) 000 o 0 o 0 0 000 14 12 10 e· .. *=~~~~ Figure 3: RICH·400 prototype, preliminary results. Left: number ofphotollluitiplier hits per event as a function of momentum for pions (blue) and positrons, uncorrected (circles) and corrected (full dots) for acceptance. Right: time resolution vs momentum for pions (blue) and positrons (red).
17. E. , Nuc!. Instr. and Meth. A 502 (2003) 112; E. , Nuc!. Instr. and Meth. A 518 (2004) 586; E. , Nucl. Instr. and Meth. A 553 (2005) 215. 18 . M. , Nucl. Instr. and Meth. A 553 (2005) 53 ; P. , Nucl. Instr. and Meth. A 567 (2006) 114; P. Abbon et al. , Nuc!. Instr. and Meth. A 572 (2007) 419; P. , "Studies for a fast RICH" , World Scientific ISBN 981-256-798-4,Singapore, 2006, page 103; P. , Nucl. Instr. and Meth. A 580 (2007) 906; P. , Nuc!. Phys. B , Proc. , 172 (2007) 75; P. , Nuc!. Instr.
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